Reversible ordering and disordering of the vortex lattice in UPt3

When studied by small-angle neutron scattering the vortex lattice (VL) in UPt3 undergoes a gradual disordering as a function of time due to 235U fission. This temporarily heats regions of the sample above the critical temperature, where, upon re-cooling, the vortices remain in a quenched disordered...

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Veröffentlicht in:Physical review. B 2022-05, Vol.105 (18)
Hauptverfasser: Avers, K. E., Kuhn, S. J., Leishman, A. W. D., Gannon, W. J., DeBeer-Schmitt, L., Dewhurst, C. D., Honecker, D., Cubitt, R., Halperin, W. P., Eskildsen, M. R.
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container_issue 18
container_start_page
container_title Physical review. B
container_volume 105
creator Avers, K. E.
Kuhn, S. J.
Leishman, A. W. D.
Gannon, W. J.
DeBeer-Schmitt, L.
Dewhurst, C. D.
Honecker, D.
Cubitt, R.
Halperin, W. P.
Eskildsen, M. R.
description When studied by small-angle neutron scattering the vortex lattice (VL) in UPt3 undergoes a gradual disordering as a function of time due to 235U fission. This temporarily heats regions of the sample above the critical temperature, where, upon re-cooling, the vortices remain in a quenched disordered state. Furthermore, the disordering rate is proportional to the magnetic field, suggesting that it is governed by collective VL properties such as the elastic moduli. An ordered VL can be re-formed by applying a small field oscillation, showing that the fission does not cause detectable radiation damage to the UPt3 crystals, even after long exposure.
doi_str_mv 10.1103/PhysRevB.105.184512
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subjects CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY
Irradiation effects
Low-temperature superconductors
Small angle neutron scattering
Superconductivity
Superconductors
Vortex lattices
Vortices in superconductors
title Reversible ordering and disordering of the vortex lattice in UPt3
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